Canine Cerebrospinal Fluid Analysis Using Two New Automated Techniques: The Sysmex XN-V Body Fluid Mode and an Artificial-Intelligence-Based Algorithm

Author:

Lapsina Sandra12ORCID,Riond Barbara1ORCID,Hofmann-Lehmann Regina1ORCID,Stirn Martina13

Affiliation:

1. Clinical Laboratory, Department of Clinical Diagnostics and Services, Vetsuisse Faculty, University of Zurich, Winterthurerstrasse 260, CH-8057 Zurich, Switzerland

2. SIA Laboklin, Fridriha Candera iela 4, LV-1046 Riga, Latvia

3. Roche Pharma Research and Early Development, Pharmaceutical Sciences, Roche Innovation Center, 4070 Basel, Switzerland

Abstract

Cerebrospinal fluid analysis is an important diagnostic test when assessing a neurological canine patient. For this analysis, the total nucleated cell count and differential cell counts are routinely taken, but both involve time-consuming manual methods. To investigate faster automated methods, in this study, the Sysmex XN-V body fluid mode and the deep-learning-based algorithm generated by the Olympus VS200 slide scanner were compared with the manual methods in 161 canine cerebrospinal fluid samples for the total nucleated cell count and in 65 samples with pleocytosis for the differential counts. Following incorrect gating by the Sysmex body fluid mode, all samples were reanalyzed with manually set gates. The Sysmex body fluid mode then showed a mean bias of 15.19 cells/μL for the total nucleated cell count and mean biases of 4.95% and −4.95% for the two-part differential cell count, while the deep-learning-based algorithm showed mean biases of −7.25%, −0.03% and 7.27% for the lymphocytes, neutrophils and monocytoid cells, respectively. Based on our findings, we propose that the automated Sysmex body fluid mode be used to measure the total nucleated cell count in canine cerebrospinal fluid samples after making adjustments to the predefined settings from the manufacturer. However, the two-part differential count of the Sysmex body fluid mode and the deep-learning-based algorithm require some optimization.

Publisher

MDPI AG

Reference44 articles.

1. The function, composition and analysis of cerebrospinal fluid in companion animals: Part II—Analysis;Platt;Vet. J.,2009

2. Cerebrospinal fluid;Cook;Vet. Clin. N. Am. Small Anim. Pract.,1988

3. Cerebrospinal fluid analysis;Chrisman;Vet. Clin. N. Am. Small Anim. Pract.,1992

4. Raskin, R.E., and Meyer, D. (2015). Canine and Feline Cytology: A Color Atlas and Interpretation Guide, Elsevier Health Sciences. [3rd ed.].

5. Cowell, R.L., and Valenciano, A.C. (2013). Cowell and Tyler’s Diagnostic Cytology and Hematology of the Dog and Cat, Elsevier. [4th ed.].

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